Soybean GmSNF4 Confers Salt-Alkali Stress Tolerance in Transgenic Plants
文献类型: 外文期刊
第一作者: Ye, Nan
作者: Ye, Nan;Bian, Jia-Shen;Zhou, Bai-Hui;Yong, Ling-Tao;Yang, Ting;Wang, Nan;Dong, Yuan-Yuan;Liu, Wei-Can;Wang, Fa-Wei;Li, Xiao-Wei;Zhou, Bai-Hui;Lv, Hai-Yan
作者机构:
关键词:
期刊名称:PLANTS-BASEL ( 影响因子:4.1; 五年影响因子:4.5 )
ISSN: 2223-7747
年卷期: 2025 年 14 卷 14 期
页码:
收录情况: SCI
摘要: In order to mitigate the reduction in soybean yield caused by soil salinization, a soybean gene, GmSNF4, which promotes plant tolerance to salt-alkali stress, was identified in this study. The STRING database was used to predict the interaction between GmSNF4 and GmPKS4. The GmPKS4 gene was experimentally shown to be involved in salt-alkali stress tolerance. Firstly, the yeast two-hybrid technique and bimolecular fluorescence complementation (BiFC) technique were used to confirm the interaction between GmSNF4 and GmPKS4: the AMPK-CBM-CBS1 conserved domain was thereby determined to be the region of the GmSNF4 protein involved in the interaction. Secondly, the GmSNF4 gene was induced by salt-alkali stress according to qRT-PCR analysis, and the GmSNF4 protein was localized in the nucleus and cytoplasm. Finally, analysis of GmSNF4's role in resistance to salt-alkali stress in transgenic soybean plants showed that transgenic lines had better phenotypic, physiological, and stress-related gene expression than non-transgenic soybeans. Thus, GmSNF4 may play a significant role in plant salt-alkali stress tolerance.
分类号:
- 相关文献
作者其他论文 更多>>
-
Leveraging a phased pangenome for haplotype design of hybrid potato
作者:Cheng, Lin;Wang, Nan;Bao, Zhigui;Yang, Yuting;Wang, Pei;Zhang, Zhiyang;Tang, Die;Zhang, Pingxian;Wu, Yaoyao;Zhou, Yao;Zheng, Yi;Hu, Yong;Lian, Qun;Ma, Zhaoxu;Zhang, Chunzhi;Zhou, Yongfeng;Huang, Sanwen;Cheng, Lin;Lassois, Ludivine;Wang, Nan;Zhou, Yongfeng;Huang, Sanwen;Bao, Zhigui;Zhou, Qian;Guarracino, Andrea;Garrison, Erik;Tang, Die;Wu, Yaoyao;Zhou, Yao;Lucas, William J.;Stein, Nils;Stein, Nils;Staedler, Thomas;Staedler, Thomas
关键词:
-
Network pharmacology and phytochemical composition combined with validation in vivo and in vitro reveal the mechanism of platycodonis radix ameliorating PM2.5-induced acute lung injury
作者:Han, Xianlei;Zhang, Yue;Zhang, Fan;Wang, Nan;Li, Xiumei;Meng, Yanli;Huo, Jinhai;Wang, Weiming;Chen, Mian;Liu, Fei
关键词:Platycodonis radix; Acute lung injury; Network pharmacology; Molecular docking; PM2.5
-
An opensource indoor climate and yield prediction model for Chinese solar greenhouses
作者:Zhou, Bo;Wang, Nan;Yang, Qichang;Zhou, Bo;Wang, Nan;Yang, Qichang;Zhou, Bo;Lastiri, Daniel Reyes;van Henten, Eldert J.
关键词:Chinese solar greenhouse; Climate model; Tomato yield prediction; Sensitivity analysis
-
Technological Innovations in Urban and Peri-Urban Agriculture: Pathways to Sustainable Food Systems in Metropolises
作者:Fei, Shulang;Wang, Nan;Fei, Shulang;Wu, Ruiqin;Liu, He;Yang, Feifei;Wang, Nan
关键词:urban and peri-urban agriculture; technology; innovation; metropolis; city; food system
-
A Gut Microbial Transformation-Integrated Network Pharmacology Approach to Elucidate the Therapeutic Mechanisms of Timosaponin AIII in Diabetes
作者:Zhang, Huiyi;Wei, Jinhuan;Li, Wenyu;Yang, Mengxin;Zhang, Qian;Wang, Nan;Du, Yingfeng;Tian, Xi;Jin, Yiran
关键词:Biotransformations; diabetes; timosaponin AIII; metabolism; molecular docking; network pharmacology
-
Adaptation mechanisms of Brucella abortus to low magnesium ion stress
作者:Wang, Hengtai;Lv, Lang;Huang, Yike;Jiang, Hui;Yang, Xiaowen;Ding, Jiabo;Li, Peng;Zhu, Liangquan;Xu, Lei;Wang, Nan;Sang, Huaiming;Jiang, Jianxia
关键词:Brucella abortus; Low Mg2+; Transcriptome analysis; MgtC; HP3
-
The genomic and epigenomic landscapes of hemizygous genes across crops with contrasting reproductive systems
作者:Peng, Yanling;Wang, Yiwen;Liu, Yuting;Fang, Xinyue;Cheng, Lin;Long, Qiming;Su, Dalu;Zhang, Tianhao;Shi, Xiaoya;Xu, Xiaodong;Xu, Qi;Wang, Nan;Zhang, Fan;Liu, Zhongjie;Xiao, Hua;Huang, Sanwen;Zhou, Yongfeng;Yao, Jin;Tian, Ling;Hu, Wei;Chen, Songbi;Huang, Sanwen;Zhou, Yongfeng;Wang, Haibo;Gaut, Brandon S.
关键词:grapevine; clonal propagation; structural variation; integrative genomics; heterozygosity